Hydrogen gas improves photothermal therapy of tumor and restrains the relapse of distant dormant tumor
Cheng Zhang, Di-Wei Zheng, Chu-Xin Li, Mei-Zhen Zou, Wu-Yang Yu, Miao-Deng Liu, Si-Yuan Peng, Zhen-Lin Zhong, Xian-Zheng Zhang
Journal:BIOMATERIALS
IF:10.27
DOI:10.1016/j.biomaterials.2019.119472
PMID:31499254
Published:2019-09-03
research field:肿瘤学生物医学工程呼吸生物学纳米技术治疗学生物化学
Abstract
Inflammation during photothermal therapy (PTT) of tumor usually results in adverse consequences. Here, a biomembrane camouflaged nanomedicine (mPDAB) containing polydopamine and ammonia borane was designed to enhance PTT efficacy and mitigate inflammation. Polydopamine, a biocompatible photothermal agent, can effectively convert light into heat for PTT. Ammonia borane was linked to the surface of polydopamine through the interaction of hydrogen bonding , which could destroy redox homoeostasis in tumor cells and reduce inflammation by H 2 release in tumor microenvironment . Owing to the same origin of outer biomembranes, mPDAB showed excellent tumor accumulation and low systemic toxicity in a breast tumor model. Excellent PTT efficacy and inflammation reduction made the mPDAB completely eliminate the primary tumors, while also restraining the outgrowth of distant dormant tumors. The biomimetic nanomedicine shows potentials as a universal inflammation-self-alleviated platform to ameliorate inflammation-related disease treatment, including but not limited to PTT for tumor.
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